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PUBMED FOR HANDHELDS

Journal Abstract Search


340 related items for PubMed ID: 23114651

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  • 5. Emergent collective dynamics of pusher and puller squirmer rods: swarming, clustering, and turbulence.
    Zantop AW, Stark H.
    Soft Matter; 2022 Aug 24; 18(33):6179-6191. PubMed ID: 35822601
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  • 6. Vortex arrays and mesoscale turbulence of self-propelled particles.
    Grossmann R, Romanczuk P, Bär M, Schimansky-Geier L.
    Phys Rev Lett; 2014 Dec 19; 113(25):258104. PubMed ID: 25554911
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  • 7. Jamming phase diagram for attractive particles.
    Trappe V, Prasad V, Cipelletti L, Segre PN, Weitz DA.
    Nature; 2001 Jun 14; 411(6839):772-5. PubMed ID: 11459050
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  • 8. Collective behavior of self-propelled rods with quorum sensing.
    Abaurrea Velasco C, Abkenar M, Gompper G, Auth T.
    Phys Rev E; 2018 Aug 14; 98(2-1):022605. PubMed ID: 30253508
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  • 13. Simulations of concentrated suspensions of rigid fibers: relationship between short-time diffusivities and the long-time rotational diffusion.
    Cobb PD, Butler JE.
    J Chem Phys; 2005 Aug 01; 123(5):054908. PubMed ID: 16108694
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  • 15. Collective dynamics of self-propelled particles with variable speed.
    Mishra S, Tunstrøm K, Couzin ID, Huepe C.
    Phys Rev E Stat Nonlin Soft Matter Phys; 2012 Jul 01; 86(1 Pt 1):011901. PubMed ID: 23005446
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  • 16. Measurement of density distributions for colloidal beta-FeOOH rods in suspensions exhibiting phase separation: the role of long-range forces in smectic ordering.
    Maeda H, Maeda Y.
    J Chem Phys; 2004 Dec 22; 121(24):12655-65. PubMed ID: 15606291
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  • 17. Emergence of coherent structures and large-scale flows in motile suspensions.
    Saintillan D, Shelley MJ.
    J R Soc Interface; 2012 Mar 07; 9(68):571-85. PubMed ID: 21865254
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  • 19. Collective motion of rod-shaped self-propelled particles through collision.
    Nagai KH.
    Biophys Physicobiol; 2018 Mar 07; 15():51-57. PubMed ID: 29607280
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